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Enzymatic hydrolysis of Asclepias syriaca fibers in the presence of ionic liquids

机译:在离子液体存在下酶解马兜铃纤维

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Attempts have been made to enhance Asclepias syriaca (As) fiber saccharification by cellulase in the presence of ionic liquids. Three ionic liquids (1-butyl-3-methylimida-zolium chloride, [BMIM]Cl; 1-ethyl-3-methylimidazolium chloride, [EMIM]Cl; and 1-butyl-4-methylpyridinium chloride, [BMP]Cl) were used. In comparison with conventional cellulose pretreatment processes, the ionic liquids were used under milder conditions corresponding to the optimum activity of cellulase. The structural modification and thermal properties of As fibers were analyzed by DSC, TG, DTG, and FT-IR. As fibers were hydrolyzed by cellulase more easily in aqueous ionic liquid media. For As fibers hydrolyzed in the presence of ionic liquids, saccharification rate during the first 3 h of the hydrolysis reaction was significantly improved, especially when the fibers were hydrolyzed in the presence of [BMP]Cl. FT-IR spectra revealed that As fibers undergo modification during enzymatic hydrolysis in the presence of ionic liquid. The increased rate of hydrolysis was accompanied by an increase in the degree of crystallinity of the As fibers. It was apparent from thermal analysis that the well ordered crystalline phase and the intermolecular regularity of carbohydrates obtained from the As fibers considered in this study were affected by the ionic liquid through changing of the fiber structure.
机译:在离子液体的存在下已经尝试通过纤维素酶来增强亚述酸纤维(Asclepias syriaca(As))纤维的糖化作用。三种离子液体(1-丁基-3-甲基咪唑鎓氯化物,[BMIM] Cl; 1-乙基-3-甲基咪唑鎓氯化物,[EMIM] Cl;和1-丁基-4-甲基吡啶鎓氯化物,[BMP] Cl)用过的。与常规的纤维素预处理工艺相比,离子液体在较温和的条件下使用,这与纤维素酶的最佳活性相对应。用DSC,TG,DTG和FT-IR分析了As纤维的结构改性和热性能。由于纤维在水性离子液体介质中更容易被纤维素酶水解。对于在离子液体存在下水解的As纤维,水解反应的前3小时内的糖化速率得到了显着提高,尤其是当纤维在[BMP] Cl存在下水解时。 FT-IR光谱表明,在离子液体存在下,As纤维在酶水解过程中发生了改性。水解速率的增加伴随着As纤维结晶度的增加。从热分析中可以明显看出,通过改变纤维结构,离子液体会影响本研究中从As纤维获得的碳水化合物的有序晶相和分子间规则性。

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